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Nano-Hybrid Smart Coatings for Biomedical Applications

Elyor BerdimurodovChemical & Materials Engineering, New Uzbekistan University, 54 Mustaqillik Ave., Tashkent 100007, UzbekistanKhasan BerdimuradovAshish KumarOmar DagdagDepartment of Mechanical Engineering, Gachon University, Seongnam 13120, Republic of KoreaMohamed RbaaLaboratory of Materials, Nanotechnology, and Environment, Faculty of Sciences, Mohammed V University in Rabat, P.O. Box 1014, 20250 Agdal-Rabat, MoroccoBhawana JainDepartment of Chemical Sciences, Siddhachalam Laboratory, Raipur, Chhattisgarh 493221, IndiaAnzirat DusmatovaInstitute of Pharmaceutical Education and Research, 19/46, Yunusabad, Tashkent 100114, UzbekistanLaziz AzimovInstitute of Pharmaceutical Education and Research, 19/46, Yunusabad, Tashkent 100114, Uzbekistan
ACS symposium seriesbook series2024en
ABI

Аннотация

Nano-hybrid smart coatings that self-repair and adapt properties in response to environmental changes show promise as next-generation corrosion protection solutions. This chapter reviews developments in the field, discussing fundamentals, early research exploring self-healing and stimuli-responsive functions using nanoparticles, and the evolution of complex nano-hybrid formulations. Key properties like enhanced barrier properties and multiple self-healing mechanisms achieved by different systems are analyzed, along with responsiveness to stimuli and performance evaluation techniques. Promising applications in automotive, aerospace, oil/gas and ship industries are explored. Remaining challenges in dispersion during scale-up and potential of integrated sensor technologies are also identified. The chapter concludes by suggesting future research directions to advance modeling, characterization and commercialization of these coatings. In summary, nano-hybrid smart coatings demonstrate potential to revolutionize corrosion protection through high performance and built-in self-care functions tailored for industrial use.

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